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1.
蔡颂  陈根余  周聪  周枫林  李光 《物理学报》2017,66(13):134205-134205
分析了脉冲激光烧蚀材料等离子体等温膨胀阶段的物理特性,建立了脉冲激光烧蚀材料等离子体压力三维方程与动力学模型.应用所建模型,数值分析了单脉冲激光烧蚀青铜金刚石砂轮等离子体相关特性,得到等离子体的反冲压力最大值870 Pa出现在约25 ns后,距离砂轮表面距离约0.05 mm处.相关条件下开展脉冲激光烧蚀青铜金刚石砂轮试验,采用高速相机观测烧蚀砂轮过程中的飞溅现象;采用光栅光谱仪测量等离子体空间发射光谱,计算了等离子体电子温度、电子密度以及反冲压力.实验表明脉冲激光烧蚀青铜金刚石砂轮等离子体反冲压力可以不计,同时也验证了气体方程与动力学模型的正确性和可行性,对脉冲光纤激光烧蚀工艺优化具有启示意义.  相似文献   

2.
微型射频离子推力器具有结构简单、工作寿命长、推力动态范围大、性能调节响应灵敏等特点,是国际微电推进领域的研究热点之一.射频离子推力器电离室内的感性耦合放电等离子体特性和推力器的性能密切相关.为此,文章建立了低气压、小尺寸微型射频离子推力器电离室内感性耦合等离子体流体模型,开展了电磁场、流场、化学反应浓度场的多物理场耦合仿真分析,并研究了等离子体放电特征参数随推进剂工质气压、放电吸收功率、射频频率以及线圈匝数等因素的变化规律.结果表明,推进剂工质气压、放电吸收功率是调节微型射频离子推力器性能的主要因素,该研究为综合调控微型射频离子推力器的工作性能奠定了良好的基础.   相似文献   

3.
脉冲等离子体推力器(pulsed plasma thruster, PPT)具有体积小、重量轻、比冲高等优点,特别适合作为执行微小卫星轨道转移、阻力补偿和姿态控制等任务的推进系统。为了深入理解PPT推力产生的机理,本文对采用具有张角的舌型极板的尾部馈送式PPT等离子体羽流开展了时空分辨光谱诊断研究。通过对光谱数据的分析发现: 等离子体羽流的主要成分为C,F,C+,F+,C2+,还含有少量的由于极板烧蚀产生的Cu+和Cu2+;等离子体在放电通道内的分布不均匀,通道中心的等离子体浓度最大,靠近阳极板的等离子浓度要明显大于靠近阴极板的等离子体浓度;在不同位置处等离子体成分也具有较大差别,F+和中性粒子主要分布在靠近阳极侧的区域;通过对各个分立谱线进行多普勒线性拟合,得到了放电通道内等离子体温度信息;以中轴线靠近工质的观测点为例,对该点在整个放电过程中不同时刻的谱线进行分析,得到了该点等离子体的具体演化过程,发现在放电的不同阶段羽流成分及各组分所占比例差别较大。  相似文献   

4.
电子回旋共振离子推力器放电室等离子体数值模拟   总被引:6,自引:0,他引:6       下载免费PDF全文
杨涓  石峰  杨铁链  孟志强 《物理学报》2010,59(12):8701-8706
电子回旋共振离子推力器属于静电型推力器,具有寿命长、比冲高、结构简单、可靠性高等优点,适用于深空探测等长时间空间飞行任务.放电室是一个关键部件,其内部通过电子回旋共振产生等离子体.针对放电室内等离子体流场建立飘移-扩散近似模型,采用迎风格式有限差分法对该模型进行数值求解,得到了放电室内不同时刻的等离子体流场分布及其演化规律.数值模拟结果可以为推力器的设计和实验研究提供有用信息.  相似文献   

5.
刘辉  蒋文嘉  宁中喜  崔凯  曾明  曹希峰  于达仁 《物理学报》2018,67(14):145201-145201
会切磁场等离子体推力器是一种利用磁镜约束等离子体产生推力的新型推力器,具有寿命长、推力大范围连续可调等优点,在无拖曳控制领域具有较大的应用前景.分别采用Xe,Kr和Ar三种不同工质,开展了会切磁场等离子体推力器实验.首先,对所用的推力器进行了简要的原理和设计介绍;然后,对三种工质的点火电压分别进行了测试,发现Xe是最容易点火成功的,Kr和Ar点火难度较大.在阳极电流、推力、效率和比冲等性能方面,三种工质在同等条件下也存在明显的区别.分析发现,三者的工质利用率高低导致了性能上的差别,通过提升通流密度能够大幅提升Kr和Ar的工质利用率.在羽流结构方面,法拉第测量结果表明三者都存在明显的空心羽流,且离子电流密度峰值出现的角度随着原子量的减小而逐渐减小.  相似文献   

6.
车碧轩  李小康  程谋森  郭大伟  杨雄 《物理学报》2018,67(1):15201-015201
为了深入研究脉冲感应推力器的工作原理,预测其推进性能,建立了一种耦合外部电路的磁流体力学模型,实现了对加速通道内等离子体二维流场结构演化过程及驱动电路放电过程的同步耦合求解.模拟计算所得美国MK-1推力器加速通道内的等离子体瞬态参数分布及推力器比冲、效率等性能参数均与实验数据一致;计算结果成功复现了推力器的工作物理图景.借助这一新模型,实现了对电路-等离子体双向耦合作用的定量分析,分析结果表明:耦合等离子体导致驱动电路等效电阻增大,电感减小;激励线圈与等离子体之间的互感随等离子体整体远离线圈表面而逐渐减小.  相似文献   

7.
纳秒激光烧蚀冲量耦合数值模拟   总被引:1,自引:0,他引:1       下载免费PDF全文
常浩  金星  陈朝阳 《物理学报》2013,62(19):195203-195203
为研究激光烧蚀靶产生冲量过程和机理, 建立了一个复杂的一维热传导和流体动力学模型. 以空间碎片常见材料Al为例, 用建立的模型数值计算了纳秒脉宽激光烧蚀靶产生的冲量及冲量耦合系数随时间变化情况. 数值结果和已有的实验数据符合的较好. 数值计算表明: 激光脉冲时间内, 靶获得的冲量随时间迅速增加, 在脉冲时间结束后, 冲量变化随时间趋于稳定; 在冲量耦合过程中, 烧蚀等离子体向真空膨胀, 羽流尺度逐渐增大, 同时吸收入射激光能量, 导致激光与靶耦合的能量降低. 关键词: 激光烧蚀 冲量耦合 等离子体  相似文献   

8.
将高功率脉冲激光作用于金属元靶,探测激光诱导等离子体在靶上产生的电学信号.研究了作用激光能量的差异对等离子体电信号的影响,实验结果表明随着激光能量的增加电信号脉冲幅度逐渐增大并趋于饱和.同时,将激光烧蚀过程中的靶材等效为瞬态电流源,初步建立了激光诱导等离子体等效电路模型,并将该模型应用于激光烧蚀金属靶,对靶上电信号的产生机制进行了详细讨论.  相似文献   

9.
李鑫  曾明  刘辉  宁中喜  于达仁 《物理学报》2023,(22):199-208
电子回旋共振(electron cyclotron resonance, ECR)源具有无需内电极、低气压电离、等离子体密度较高和结构紧凑等优点,适用于小功率电推进.因此,研究小功率碘工质ECR等离子体源具有重要意义.本文首先设计了一套耐腐蚀且可以均衡稳定输出碘蒸汽的储供系统;然后完成了耐碘腐蚀ECR推力器设计,利用耐腐蚀的同轴谐振腔结构将微波馈送到推力器,并将通道磁场变为会切型磁场以产生更多ECR层;最终联合点火实验成功,成为国际上首个可以用于电推进的ECR电离碘工质等离子体源.分析实验和静磁场、微波电场分布发现,小功率、低流量下的不稳定等离子体羽流闪烁由寻常波电子等离子体共振加热和非寻常波ECR加热模式之间的转化引起.高流量下电离率下降是由电子损失、壁面损失和碘工质电负性导致.并依据此原理提出了改进方案.放电后等离子体源没有明显损伤,说明具备长寿命潜力.此项工作初步证实了小功率碘工质ECR电推进方案可行.  相似文献   

10.
罗乐乐  窦志国  叶继飞 《物理学报》2018,67(18):187901-187901
选择含能聚合物聚叠氮缩水甘油醚(GAP)作为激光烧蚀微推力器的工质,分析了红外染料掺杂对激光烧蚀GAP工质推进性能的影响.通过对比掺杂红外染料GAP在不同激光功率密度、掺杂浓度、靶材厚度和激光烧蚀模式下的推进性能数据和烧蚀羽流,初步探索了掺杂红外染料GAP工质的推进性能优化方式.实验结果表明:透射式激光烧蚀模式下,激光能量的指数衰减特性和掺杂红外染料GAP的强黏性使得烧蚀羽流中易存在未充分烧蚀的工质; GAP的推进性能受红外染料掺杂浓度和靶材厚度的综合影响,当靶材厚度与激光吸收深度接近时,靶材充分吸收激光能量使中心烧蚀区达到化学能释放的温度阈值,同时沿激光传播方向未充分烧蚀的质量最少,此时推进性能达到最优值.反射式下掺杂红外染料的聚合物的激光烧蚀过程遵循"先吸收激光能量先喷射"的规律,工质分解充分,推进性能优于透射式.  相似文献   

11.
In this work, we analyze the physical processes of a pulsed discharge in a dielectric (Teflon) cavity. This type of discharge is generated in a coaxial pulsed plasma thruster (PPT) having a central Teflon cavity to produce a high-pressure cloud of ablation products during the discharge pulse. The primary intended role of this model is to provide upstream boundary conditions for particle simulation codes used to study the exhaust plume. The main features of the electrical discharge in the dielectric cavity include Joule heating of the plasma, heat transfer to the dielectric, decomposition of the dielectric followed by partial ionization, and acceleration of the plasma up to the sound speed at the cavity exit. We consider a diffuse type of discharge assuming that all plasma parameters are uniform in the cavity. The system of equations is based on the plasma energy balance, thermal conductivity, dielectric ablation, and mass balance. It is found that most of the energy of the plasma column is carried off by particle convection to the dielectric and by radiation. It is found that during the pulse, the electron density peaks at about 1024 m-3 and decreases to 1021 m-3 toward the end of the pulse, whereas the electron temperature peaks at about 2.2 eV and decays to 1.5 eV. Teflon surface temperature peaks at about 650 K. Predicted plasma temperature and ablated mass are found to be in agreement with available experimental data  相似文献   

12.
谭胜  吴建军  黄强  张宇  杜忻洳 《物理学报》2019,68(5):57901-057901
为了分析飞秒激光烧蚀过程,在双相延迟模型的基础上建立了双曲型热传导模型.模型中考虑了靶材的加热、蒸发和相爆炸,还考虑了等离子体羽流的形成和膨胀及其与入射激光的相互作用,以及光学和热物性参数随温度的变化.研究结果表明:等离子体屏蔽对飞秒激光烧蚀过程有重要的影响,特别是在激光能量密度较高时;两个延迟时间的比值对飞秒激光烧蚀过程中靶材的温度特性和烧蚀深度有较大的影响;飞秒激光烧蚀机制主要以相爆炸为主.飞秒激光烧蚀的热影响区域较小,而且热影响区域的大小受激光能量密度的影响较小.计算结果与文献中实验结果的对比表明基于双相延迟模型的飞秒激光烧蚀模型能有效对飞秒激光烧蚀过程进行模拟.  相似文献   

13.
The vaporization effect and the following plasma shielding generated by high-power nanosecond pulsed laser ablation are studied in detail based on the heat flux equation. As an example of Si target, we obtain the time evolution of the calculated surface temperature, ablation rate and ablation depth by solving the heat flow equations using a finite difference method. It can be seen that plasma shielding plays a more important role in the ablation process with time. At the same time, the variation of ablation depth per pulse with laser fluence is performed. Our numerical results are more agreed with the experiment datum than other simulated results. The result shows that the plasma shielding is very important.  相似文献   

14.
A thermal model to describe the high-power nanosecond pulsed laser ablation is presented. It involves the vaporization and the following plasma shielding effect on the whole ablation process. As an example of Si target, we obtainthe time evolution of the calculated surface temperature, ablation rate and ablation depth. It can be seen that plasma shielding plays a more important role in the ablation process with time. At the same time, the ablation depth with laser fluence based on different models is shown. Moreover, we simulate the pulsed laser irradiation Ni target. The evolution of the transmitted intensity and the variation of ablation depth per pulse with laser fluence are performed. Under the same experimental conditions, the numerical results calculated with our thermal model are more in agreement with the experimental data.  相似文献   

15.
吴迪  宫野  刘金远  王晓钢  刘悦  马腾才 《中国物理》2006,15(11):2682-2687
Two-dimensional numerical research has been carried out on the ablation effects of titanium target irradiated by intense pulsed ion beam (IPIB) generated by TEMP II accelerator. Temporal and spatial evolution of the ablation process of the target during a pulse time has been simulated. We have come to the conclusion that the melting and evaporating process begin from the surface and the target is ablated layer by layer when the target is irradiated by the IPIB. Meanwhile, we also obtained the result that the average ablation velocity in target central region is about 10\,m/s, which is far less than the ejection velocity of the plume plasma formed by irradiation. Different effects have been compared to the different ratio of the ions and different energy density of IPIB while the target is irradiated by pulsed beams.  相似文献   

16.
We present a one-dimensional time-dependent numerical model for the expansion process of ablation plasma induced by intense pulsed ion beam (IPIB). The evolutions of density, velocity, temperature, and pressure of the ablation plasma of the aluminium target are obtained. The numerical results are well in agreement with the relative experimental data. It is shown that the expansion process of ablation plasma induced by IPIB includes strongly nonlinear effects and that shock waves appear during the propagation of the ablation plasma.  相似文献   

17.
A detailed understanding of the physical determinants of the ablation rate in multiple nanosecond laser pulses regime is of key importance for technological applications such as patterning and pulsed-laser deposition. Here, theoretical modeling is employed to investigate the ablation of thick metallic plates by intense, multiple nanosecond laser pulses. A new photo-thermal model is proposed, in which the complex phenomena associated to the ablation process are accounted for as supplementary terms of the classical heat equation. The pulsed laser ablation in the nanosecond regime is considered as a competition between thermal vapourization and melt ejection under the action of the plasma recoil pressure. Computer simulations using the photo-thermal model presented here and the comparison of the theoretical results with experiment indicate two different mechanisms that contribute to the decrease of the ablation efficiency. First, during the ablation process the vapour/plasma plume expanding above the irradiated target attenuates the laser beam that reaches the sample, leading to a marked decrease of the ablation efficiency. Additional attenuation of the laser beam incident on the sample is produced due to the heating of the plasma by the absorption of the laser beam into the plasma plume. The second mechanism by which the ablation efficiency decreases consists of the reduction of the incident laser intensity with the lateral area, and of the melt ejection velocity with the depth of the hole.  相似文献   

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